Tsui L C, Breitman M L
Somat Cell Mol Genet. 1985 Mar;11(2):167-76. doi: 10.1007/BF01534705.
We have previously demonstrated that COS-1 cell lines transformed by pSV2-gpt and maintained under biochemical selection replicate multiple copies of extrachromosomal plasmid DNA (1). We have now examined the replication and stability of this DNA in a representative cell line. In situ hybridization analyses revealed that intense replication of pSV2-gpt occurs in only a small subpopulation of cells and results from bursts of plasmid replication that occur periodically and spontaneously in the cell population. This suggests that COS-1 cells are only semipermissive for pSV2-gpt replication. No correlation was observed between levels of pSV2-gpt replication and the presence or absence of biochemical selection for the Gpt marker. However, growth of cells under nonselective conditions led to a rapid and progressive loss of pSV2-gpt DNA. This loss correlated with segregation of Gpt- revertants that lacked detectable plasmid sequences. Hence, maintenance of pSV2-gpt in the cell line was dependent on continuous biochemical selection. Stable replication of pSV2-gpt could be observed as late as four months after transfection, suggesting that this system might be useful for propagation of cloned DNA in COS-1 cells for extended periods of time. However, by nine months, extensive rearrangements of pSV2-gpt sequences were detected, indicating ultimate instability of the plasmid in the host cells.
我们先前已经证明,由pSV2 - gpt转化并在生化选择条件下维持的COS - 1细胞系可复制多拷贝的染色体外质粒DNA(1)。我们现在研究了这种DNA在一个代表性细胞系中的复制和稳定性。原位杂交分析表明,pSV2 - gpt的强烈复制仅发生在一小部分细胞中,并且是由细胞群体中周期性自发发生的质粒复制爆发所导致的。这表明COS - 1细胞对pSV2 - gpt复制只是半允许的。未观察到pSV2 - gpt复制水平与对Gpt标记进行生化选择的有无之间存在相关性。然而,在非选择条件下细胞生长导致pSV2 - gpt DNA迅速且逐渐丢失。这种丢失与缺乏可检测质粒序列的Gpt回复突变体的分离相关。因此,pSV2 - gpt在细胞系中的维持依赖于持续的生化选择。在转染后长达四个月都能观察到pSV2 - gpt的稳定复制,这表明该系统可能有助于在COS - 1细胞中长时间扩增克隆DNA。然而,到九个月时,检测到pSV2 - gpt序列发生了广泛重排,表明该质粒在宿主细胞中最终是不稳定的。